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层状过渡金属二卤族化合物在微流控芯片装置中的应用:用于微流控非酶检测过氧化氢的 1T-WS 相

Group 6 Layered Transition-Metal Dichalcogenides in Lab-on-a-Chip Devices: 1T-Phase WS for Microfluidics Non-Enzymatic Detection of Hydrogen Peroxide.

机构信息

Division of Chemistry and Biological Chemistry, School of Physical and Mathematical Science, Nanyang Technological University , 637371 Singapore.

BioSystems & Micromechanics IRG (BioSyM), Singapore-MIT Alliance for Research and Technology (SMART) Centre, S16-05-08, 3 Science Drive 2, 117543 Singapore.

出版信息

Anal Chem. 2017 May 2;89(9):4978-4985. doi: 10.1021/acs.analchem.7b00302. Epub 2017 Apr 10.

Abstract

Two-dimensional (2D) layered transition-metal dichalcogenides (TMDs) have been placed in the spotlight for their advantageous properties for catalytic and sensing applications. However, little work is done to explore and exploit them in enhancing the performance of analytical lab-on-a-chip (LOC) devices. In this work, we demonstrate a simple, sensitive, and low-cost fabrication of electrochemical LOC microfluidic devices to be used for enzymatic detection. We integrated four t-BuLi exfoliated, group 6 TMD materials (MoS, MoSe, WS, and WSe) within the LOC devices by the drop-casting method and compared their performance for HO detection. The 1T-phase WS-based LOC device outperformed the rest of the TMD materials and exhibited a wide range of linear response (20 nM to 20 μM and 100 μM to 2 mM), low detection limit (2.0 nM), and good selectivity for applications in real sample analysis. This work may facilitate the expanded use of electrochemical LOC microfluidics, with its easier integrability, for applications in the field of biodiagnostics and sensing.

摘要

二维(2D)层状过渡金属二卤族化合物(TMD)因其在催化和传感应用中的优势而备受关注。然而,很少有人致力于探索和利用它们来提高分析型微流控芯片(LOC)设备的性能。在这项工作中,我们展示了一种简单、灵敏且低成本的电化学 LOC 微流控器件制造方法,用于酶检测。我们通过滴铸法将四种 t-BuLi 剥离的第 6 族 TMD 材料(MoS、MoSe、WS 和 WSe)集成到 LOC 器件中,并比较了它们对 HO 检测的性能。基于 1T 相 WS 的 LOC 器件的性能优于其他 TMD 材料,表现出宽线性响应范围(20 nM 至 20 μM 和 100 μM 至 2 mM)、低检测限(2.0 nM),并且对实际样品分析中的应用具有良好的选择性。这项工作可能会促进电化学 LOC 微流控技术的广泛应用,因为它具有更易于集成的特点,可用于生物诊断和传感领域。

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